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Analysis of Inductorless Zero-Voltage-Switching Piezoelectric Transformer-Based Converters

机译:无电感零电压开关压电变压器的分析

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The inductorless piezoelectric transformer (PT)-based resonant converter topology allows all the components between the half-bridge inverter and rectifier in a conventional LCC converter to be replaced with a single ceramic component. This offers potential savings in cost, size, and mass. However, zero-voltage switching (ZVS) becomes more difficult to achieve because the MOSFET output capacitances are augmented by the PT input capacitance. This paper presents an analytical model for the ZVS condition in inductorless PT-based converters. Unlike previously reported models, the proposed model is shown to offer a level of accuracy comparable to a SPICE simulation and to correlate well with experimental results. Using a normalization scheme and numerical optimization techniques, the criteria for achieving inductorless ZVS are found in terms of the equivalent circuit components. Both ac-output and dc-output variants are considered, and design charts for ensuring ZVS in five different topologies are presented. The results and design charts are applicable to any type of PT that can be represented by the standard PT equivalent circuit.
机译:基于无电感器压电变压器(PT)的谐振转换器拓扑允许将常规LCC转换器中半桥逆变器和整流器之间的所有组件替换为单个陶瓷组件。这样可以节省成本,尺寸和质量。但是,零电压开关(ZVS)变得更难实现,因为PT输入电容会增加MOSFET输出电容。本文提出了一种基于无电感PT的转换器中ZVS条件的解析模型。与以前报道的模型不同,所提出的模型显示出可提供与SPICE仿真相当的准确性,并且与实验结果具有很好的相关性。使用归一化方案和数值优化技术,可以根据等效电路组件找到实现无电感器ZVS的标准。考虑了交流输出和直流输出两种变体,并给出了用于确保五种不同拓扑中的ZVS的设计图。结果和设计图适用于可以由标准PT等效电路表示的任何类型的PT。

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